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Mesoscopic Numerical Computation of Compressive Strength and Damage Mechanism of Rubber Concrete

机译:橡胶混凝土抗压强度与破坏机理的细观数值计算

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Evaluations of both macroscopic and mesoscopic strengths of materials have been the topic of a great deal of recent research. This paper presents the results of a study, based on the Walraven equation of the production of a mesoscopic random aggregate structure containing various rubber contents and aggregate sizes. On a mesoscopic scale, the damage mechanism in the rubber concrete and the effects of the rubber content and aggregate-mortar interface on the rubber concrete’s compressive resistance property were studied. The results indicate that the random aggregate structural model very closely approximates the experimental results in terms of the fracture distribution and damage characteristics under uniaxial compression. The aggregate-mortar interface mechanical properties have a substantial impact on the test sample’s strength and fracture distribution. As the rubber content increases, the compressive strength and elastic modulus of the test sample decrease proportionally. This paper presents graphics of the entire process from fracture propagation to structural failure of the test piece by means of the mesoscopic finite-element method, which provides a theoretical reference for studying the damage mechanism in rubber concrete and performing parametric calculations.
机译:材料的宏观和介观强度的评估已成为近期研究的主题。本文提出了基于Walraven方程的研究结果,该方程是包含各种橡胶含量和集料尺寸的介观无规集料结构的生产的。在介观尺度上,研究了橡胶混凝土的破坏机理以及橡胶含量和骨料-砂浆界面对橡胶混凝土抗压性能的影响。结果表明,随机骨料结构模型在单轴压缩下的断裂分布和破坏特性方面非常接近实验结果。骨料-砂浆界面的机械性能对测试样品的强度和断裂分布有很大影响。随着橡胶含量的增加,测试样品的抗压强度和弹性模量成比例下降。本文通过介观有限元方法给出了从断裂扩展到试件结构破坏的全过程图形,为研究橡胶混凝土的损伤机理和进行参数计算提供了理论参考。

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